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Titanium Oxide Nanowires, 50-100 nm. Group: other s.
Titanium Oxide Anatase Nanowires
Titanium Oxide Anatase Nanowires. Group: Nanowires. CAS No. 13463-67-7.
[5,6]-Fullerene-C70
(5,6)-Fullerene-C70 (C70) is an ellipsoidal fullerene which has stable spheroidal carbon molecules. C70 is an n-channel organic semiconductor. High reactivity of fullerenes is attributed to its characteristic pyramidalization of the sp2 carbons. Vacuum dried to remove residual solvent.Typical hydrocarbon content <0.25%. Uses: C70 may be incorporated into titanium oxide (tio2) based nanowires and it forms a nanocomposite for light responsive photocatalyst. it can also be used as a photo-absorptive material in the fabrication of high performance organic photovoltaic (opv) cells. Group: other nano materials. Alternative Names: BuckminsterfullereneC70,Fullerene-C70. CAS No. 115383-22-7. Product ID: (C\{70}-D\{5h(6)})fullerene. Molecular formula: 840.75. Mole weight: C70. C1CC2C3CCC4C5C3C6C2C7C1CC8CC9CC% 10CC% 11C% 12CC% 13CC4C% 13% 14C% 12C% 15C% 11C% 16C% 10C9C% 17C8C7C% 18C% 17C% 16C% 15C (C6% 18) C5% 14. 98%.
[5,6]-Fullerene-C70
(5,6)-Fullerene-C70 (C70) is an ellipsoidal fullerene which has stable spheroidal carbon molecules. C70 is an n-channel organic semiconductor. High reactivity of fullerenes is attributed to its characteristic pyramidalization of the sp2 carbons. Vacuum dried to remove residual solvent.Typical hydrocarbon content <0.25%. Uses: C70 may be incorporated into titanium oxide (tio2) based nanowires and it forms a nanocomposite for light responsive photocatalyst. it can also be used as a photo-absorptive material in the fabrication of high performance organic photovoltaic (opv) cells. Group: Supercapacitorscarbon nano materials organic field effect transistor (ofet) materials organic solar cell (opv) materials sublimed materials. Alternative Names: BuckminsterfullereneC70,Fullerene-C70. CAS No. 115383-22-7. Pack Sizes: 250 mg in glass insert. Product ID: (C\{70}-D\{5h(6)})fullerene. Molecular formula: 840.75. Mole weight: C70. C1CC2C3CCC4C5C3C6C2C7C1CC8CC9CC% 10CC% 11C% 12CC% 13CC4C% 13% 14C% 12C% 15C% 11C% 16C% 10C9C% 17C8C7C% 18C% 17C% 16C% 15C (C6% 18) C5% 14. 1S / C70 / c1-2-22-5-6-24-13-14-26-11-9-23-4-3 (21 (1) 51-52 (22) 54 (24) 55 (26) 53 (23) 51) 33-31 (1) 61-35-7-8-27-15-16-29-19-20-30-18-17- 28-12-10 (25 (7) 56-57 (27) 59 (29) 60 (30) 58 (28) 56) 37 (35) 63 (33) 65-36 (4) 40 (9) 67 (44 (17) 42 (12) 65 ) 69-46 (11) 47 (14) 70 (50 (20) 49 (18) 69) 68-43 (13) 39 (6) 66 (45 (16) 48 (19) 6 8) 64-34 (5) 32 (2) 62 (61) 38
Titanium(IV) oxide
Nanopowder , 21 nm primary particle size (TEM), ≥99.5% trace metals basis. Uses: Tio2 nanoparticles were used to study the photocatalytic hexane vapor degradation. it has been used as a sorbent for arsenic removal. tio2 nanoparticles are suitable for remediation of antiseptic components in wastewater by photocatalysis. it has also been used to study adsorption of dna oligonucleotides by titanium dioxide nanoparticles. Group: Nanowiresorganic solar cell (opv) materials. Alternative Names: Titanium dioxide, Titania. CAS No. 13463-67-7. Pack Sizes: 100 g. Product ID: dioxotitanium. Molecular formula: 79.87 g/mol. Mole weight: TiO2. O=[Ti]=O. 1S/2O.Ti. GWEVSGVZZGPLCZ-UHFFFAOYSA-N. nanopowder,21 nmprimaryparticlesizeTEM, ≥99.5%tracemetalsbasis.